Characteristics of human dendritic cells generated in a microgravity analog culture system

被引:0
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作者
Cherylyn A. Savary
Monica L. Grazziutti
Donna Przepiorka
Stephen P. Tomasovic
Bradley W. McIntyre
Darren G. Woodside
Neal R. Pellis
Duane L. Pierson
John H. Rex
机构
[1] The University of Texas,Department of Immunology
[2] M. D. Anderson Cancer Center,Department of Molecular and Cellular Oncology
[3] The University of Texas,Center for Cell and Gene Therapy
[4] M. D. Anderson Cancer Center,Lyndon B. Johnson Space Center
[5] Baylor College of Medicine,Department of Internal Medicine
[6] National Aeronautics and Space Administration,Department of Surgical Oncology
[7] The University of Texas Medical School,undefined
[8] The University of Texas,undefined
[9] M. D. Anderson Cancer Center,undefined
关键词
antigen-presenting cells; dendritic cells; fungus; immunity; microgravity; space flight;
D O I
10.1007/BF02577532
中图分类号
学科分类号
摘要
Generation of an effective immune response requires that antigens be processed and presented to T lymphocytes by antigen-presenting cells, the most efficient of which are dendritic cells (DC). Because of their influence on both the innate and the acquired arms of immunity, a defect in DC would be expected, to result in a broad impairment of immune function, not unlike that observed in astronauts during or after space flight. In the study reported here, we investigated whether DC generation and function are altered in a culture environment that models microgravity, i.e., the rotary-cell culture system (RCCS). We observed that RCCS supported the generation of DC identified by morphology, phenotype (HLA-DR+ and lacking lineage-associated markers), and function (high allostimulatory activity). However, the yield of DC from RCCS was significantly lower than that from static cultures. RCCS-generated DC were less able to phagocytoseAspergillus fumigatus conidia and expressed a lower density of surface HLA-DR. The proportion of Dc expressing CD80 was also significantly reduced in RCCS compared to static cultures. When exposed to fungal antigens, RCCS-generated DC produced lower levels of interleukin-12 and failed to upregulate some costimulatory/adhesion molecules involved in antigen presentation. These data suggest that DC generation, and some functions needed to mount an effective immune response to pathogens, may be disturbed in the microgravity environment of space.
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页码:216 / 222
页数:6
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